首页> 美国卫生研究院文献>The EMBO Journal >ATP-linked monomer-polymer equilibrium of smooth muscle myosin: the free folded monomer traps ADP.Pi.
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ATP-linked monomer-polymer equilibrium of smooth muscle myosin: the free folded monomer traps ADP.Pi.

机译:ATP连接的平滑肌肌球蛋白的单体-聚合物平衡:自由折叠的单体会捕获ADP.Pi。

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摘要

In vitro and at physiological ionic strength, unphosphorylated smooth muscle myosin filaments dissolve on addition of ATP, forming folded (10S) myosin monomers. By following the fate of ATP and the time course of filament disassembly we have established details of the mechanism of this process. Myosin filaments first bind and hydrolyse 2.0 mol/mol of ATP before significant filament dissolution occurs. Following dissolution, the hydrolysis products ADP.Pi are retained on the heads of the folded myosin monomers, and are released so slowly (half time approximately 100 min at 100 mM KCl) as to be effectively trapped. The straight (6S) conformation of myosin, stable at greater than 225 mM KCl, did not exhibit this product trapping, and neither did myosin filaments held under conditions which disfavour ATP-induced disassembly. The implications of these results for filament stability in vivo are discussed in terms of a simple, testable model for smooth muscle myosin self-assembly.
机译:在体外并以生理离子强度,未磷酸化的平滑肌肌球蛋白丝会在添加ATP后溶解,形成折叠的(10S)肌球蛋白单体。通过了解ATP的命运和灯丝拆卸的时间过程,我们已经确定了该过程的机理的细节。肌球蛋白长丝首先结合并水解2.0 mol / mol ATP,然后长丝发生明显溶解。溶解后,水解产物ADP.Pi保留在折叠的肌球蛋白单体的头部,并缓慢释放(在100 mM KCl下约半分钟,持续100分钟)以被有效捕获。稳定在大于225 mM KCl的肌球蛋白的直链(6S)构象没有这种产物的捕获,肌球蛋白的丝也没有保持在不利于ATP诱导的分解的条件下。这些结果对体内细丝稳定性的影响是根据平滑肌肌球蛋白自组装的简单可测试模型进行讨论的。

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